The use of orthogonal ribosomes in combination with dynamic resource allocation controllers is a promising approach for relieving the negative effects of cellular resource limitations on the modularity of synthetic gene circuits. Here, we develop a detailed mechanistic model of gene expression and resource allocation, which when simplified to a tractable level of complexity, allows the rational design of translational resource allocation controllers. Analysis of this model reveals a fundamental design trade-off; that reducing coupling acts to decrease gene expression. Through a sensitivity analysis of the experimentally tuneable controller parameters, we identify how each controller design parameter affects the overall closed-loop b...
In this paper we motivate and develop a model of gene expression for the purpose of studying the int...
Until recently, engineering strategies for altering gene expression have focused on transcription co...
The ribosome is one of the most basic cellular machines and is ubiquitous in all living cells, respo...
The use of orthogonal ribosomes in combination with dynamic resource allocation controllers is a pro...
The use of orthogonal ribosomes in combination with dynamic resource allocation controllers is a pro...
To control cellular processes synthetic biologists and biotechnologists often use regulation of gene...
Introduction of synthetic circuits into microbes creates competition between circuit and host genes ...
Cells contain a finite set of resources that must be distributed across many processes to ensure sur...
The behavior of genetic circuits is often poorly predictable. A gene’s expression level is not only ...
Cells contain a finite set of resources that must be distributed across many processes to ensure sur...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Cata...
Cells contain a finite set of resources that must be distributed across many processes to ensure sur...
© 2020, The Author(s). Synthetic biology has the potential to bring forth advanced genetic devices f...
A recurring challenge in the design of genetic circuits is context dependence, the fact that the beh...
A common approach to design genetic circuits is to compose gene expression cassettes together. While...
In this paper we motivate and develop a model of gene expression for the purpose of studying the int...
Until recently, engineering strategies for altering gene expression have focused on transcription co...
The ribosome is one of the most basic cellular machines and is ubiquitous in all living cells, respo...
The use of orthogonal ribosomes in combination with dynamic resource allocation controllers is a pro...
The use of orthogonal ribosomes in combination with dynamic resource allocation controllers is a pro...
To control cellular processes synthetic biologists and biotechnologists often use regulation of gene...
Introduction of synthetic circuits into microbes creates competition between circuit and host genes ...
Cells contain a finite set of resources that must be distributed across many processes to ensure sur...
The behavior of genetic circuits is often poorly predictable. A gene’s expression level is not only ...
Cells contain a finite set of resources that must be distributed across many processes to ensure sur...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Cata...
Cells contain a finite set of resources that must be distributed across many processes to ensure sur...
© 2020, The Author(s). Synthetic biology has the potential to bring forth advanced genetic devices f...
A recurring challenge in the design of genetic circuits is context dependence, the fact that the beh...
A common approach to design genetic circuits is to compose gene expression cassettes together. While...
In this paper we motivate and develop a model of gene expression for the purpose of studying the int...
Until recently, engineering strategies for altering gene expression have focused on transcription co...
The ribosome is one of the most basic cellular machines and is ubiquitous in all living cells, respo...